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Segment Routed Traffic Engineering with Bounded Stretch in Software-Defined Networks

机译:软件定义网络中具有无限延伸的分段路由流量工程

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Segment Routed Traffic Engineering is emerging as an important application for network operators to manage resource utilization by using segment routing paths as candidates for route selection. In order to facilitate the network operator demands, a traffic engineering program should be fast and efficient. These two characteristics are very essential since the traffic engineering program must be invoked periodically in short intervals. The segment routing paths can be constructed by concatenating the shortest paths between two nodes such that there is a path from source to destination. We are interested in the problem to find intermediate nodes to construct segment routing paths minimizing the maximum link utilization. However, the existing approaches have the shortcomings that either they require a substantial amount of time to find a solution or they must sacrifice a considerable amount of link utilization. To address these issues, we propose to limit the number of intermediate node candidates by using a bounded stretch constraint relative to the shortest path of the source-destination pair. Then, we evaluate the computation time and link utilization against the existing work. We show that the bounded stretch constraint helps reduce the computation time while a near optimal link utilization can be achieved.
机译:网段路由流量工程正在成为网络运营商通过使用网段路由路径作为路由选择候选者来管理资源利用的重要应用程序。为了满足网络运营商的需求,流量工程程序应快速而有效。这两个特性非常重要,因为必须在短时间内定期调用交通工程程序。可以通过串联两个节点之间的最短路径来构造段路由路径,这样就存在从源到目的地的路径。我们对找到中间节点来构造分段路由路径的问题感兴趣,该中间节点将最大链路利用率降至最低。但是,现有方法的缺点是要么需要大量时间才能找到解决方案,要么必须牺牲大量链路利用率。为了解决这些问题,我们建议通过使用有界拉伸约束相对于源-目标对的最短路径来限制中间节点候选的数量。然后,我们评估计算时间并针对现有工作评估链接利用率。我们表明,有界拉伸约束有助于减少计算时间,同时可以实现接近最佳的链路利用率。

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